Evaluation of Carbon Storage and Carbon Sequestration Functions of Urban Street Trees: A Case Study of Jinju City

초록

Background and objective: Urban street trees contribute to climate change mitigation by storing carbon in biomass andsequestering atmospheric CO₂ through growth. However, quantitative assessments of carbon storage and annual carbonuptake by street trees are still limited in many Korean cities. This study evaluated the carbon storage and carbonsequestration functions of street trees in Jinju City, South Korea, and examined how these functions differed according todistrict-level tree structure, species composition, and mean diameter at breast height (DBH). Methods: Street-tree inventory data for Jinju City were obtained from a public dataset and reorganized into 10 districts (A–J). Trees were classified into needleleaf and broadleaf groups, and carbon storage and annual carbon uptake wereestimated using DBH-based coefficients derived from existing urban tree carbon estimation equations. District-levelcomparisons were conducted for tree abundance, mean DBH, total carbon storage, annual carbon uptake, and therelationship among broadleaf proportion, mean DBH, and mean CO₂ uptake per tree. Results: Tree structure and carbon functions differed markedly among districts. Total carbon storage was highest in districtH (1,605 tCO₂), indicating that mature stands with large DBH acted as major carbon reservoirs. In contrast, annual carbon uptake was greatest in district C (68.5 tCO₂ yr⁻¹), suggesting that districts dominated by younger and actively growing trees can contribute more strongly to current carbon sequestration. Under the functional-group-specific equations applied inthis study, broadleaf trees generally showed higher model-estimated carbon storage and annual carbon uptake per treethan needleleaf trees in mixed-tree districts. Broadleaf trees exhibited carbon storage of 242.14–1458.40 kg CO₂ tree⁻¹ and annual carbon uptake of 21.14–47.42 kg CO₂ tree⁻¹ yr⁻¹, whereas needleleaf trees showed 92.08–438.14 kg CO₂ tree⁻¹ and 3.87–6.54 kg CO₂ tree⁻¹ yr⁻¹, respectively. In addition, descriptive comparisons showed differences in model-estimated mean CO₂ uptake per tree according to district-level broadleaf proportion and mean DBH. Conclusion: The carbon storage and sequestration functions of street trees in Jinju City were strongly influenced by district-level tree structure, species composition, and mean DBH. Mature tree-dominated districts contributed more tototal carbon storage, whereas districts with higher broadleaf representation and active growth contributed more to annual carbon uptake. These findings suggest that future street-tree management should move beyond conventional landscapemaintenance and adopt carbon-oriented strategies, including suitable species selection, expansion of broadleaf planting,securing adequate growing space, and minimizing excessive pruning.

키워드

annual carbon uptake; district-level analysis; green infrastructure; urban forestry
제목
Evaluation of Carbon Storage and Carbon Sequestration Functions of Urban Street Trees: A Case Study of Jinju City
저자
정현종; Muhammad Israr Khan; Rubab Sarfraz; 김필주; 김길원
발행일
2026-08
유형
Y
저널명
인간식물환경학회지
권
29
호
4
페이지
513 ~ 522